Application-Level Service Assurance with 5G RAN Slicing
Arjun Balasingam, Manikanta Kotaru, Paramvir Bahl
摘要
This paper presents Zipper, a novel Radio Access Network (RAN) slicing system that provides assurances of application-level throughput and latency. Existing RAN slicing systems optimize for slice-level assurance, but these methods fail to provide predictable network performance to individual mobile apps. Extending the slice-level formulation to app-level introduces an intractable optimization problem with exploding state and action spaces. To simplify the search space, Zipper casts the problem as a model predictive controller, and explicitly tracks the network dynamics of each user. It uses an efficient algorithm to compute slice bandwidth allocations that meet each app's requirements. To assist operators with interfacing admission control policies, Zipper exposes a primitive that estimates if there is bandwidth available to accommodate an incoming app's requirements. We implemented Zipper on a production-class 5G virtual RAN testbed integrated with hooks to control slice bandwidth, and we evaluated it on real workloads, including video conferencing and virtual reality apps. On a representative RAN workload, our real-time implementation supports up to 200 apps and over 70 slices on a 100 MHz channel. Relative to a slice-level service assurance system, Zipper reduces tail throughput and latency violations, measured as a ratio of violation of the app's request, by 9×.
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引用它的顶会 Paper3
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- QCON: Seamless QoE-Aware 5G Streaming via Multi-ConnectivityGoodsol Lee, Junhong Min, Seyeon Kim, Juheon Yi 等NSDI 2026 · 被引用 3 次
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它引用的顶会 Paper4
- Learning in situ: a randomized experiment in video streamingFrancis Y. Yan, Hudson Ayers, Chenzhi Zhu, Sadjad Fouladi 等NSDI 2020 · 被引用 360 次
- Channel-Aware 5G RAN Slicing with Customizable SchedulersYongzhou Chen, Ruihao Yao, Haitham Hassanieh, Radhika MittalNSDI 2023 · 被引用 52 次
- Taking 5G RAN Analytics and Control to a New LevelXenofon Foukas, Bozidar Radunovic, Matthew Balkwill, Zhihua LaiMobiCom 2023 · 被引用 47 次
- FSA: fronthaul slicing architecture for 5G using dataplane programmable switchesNishant Budhdev, Raj Joshi, Pravein Govindan Kannan, Mun Choon Chan 等MobiCom 2021 · 被引用 16 次
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